Novel adiabatic steel curtain wall system
By using a new type of thermally insulated steel curtain wall system composed of steel columns and steel beams combined with thermal insulation materials, the problem of thermal insulation of existing thermally insulated aluminum alloy profiles being difficult to meet the thermal insulation requirements of large-span buildings has been solved, and the thermal insulation effect of large-span buildings has been achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-17
- Publication Date
- 2026-03-24
AI Technical Summary
Existing thermally broken aluminum alloy profiles are insufficient to meet the structural requirements and thermal insulation needs of large-span buildings.
A new type of thermally insulated steel curtain wall system is constructed by using steel columns and beams, combined with thermal insulation materials, sealing strips, glass, pressure plates, and cover plates.
It achieves thermal insulation for large-span buildings, and its construction is simple and easy to implement.
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Figure CN121719331A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of construction engineering, in particular to a heat-insulating steel curtain wall system. BACKGROUND
[0002] The existing heat-insulating curtain wall system all uses heat-insulating aluminum alloy profiles as columns and beams, which is suitable for buildings with small span, but when it comes to large-span projects with heat-insulating requirements, heat-insulating aluminum alloy profiles are difficult to achieve. A new type of heat-insulating steel curtain wall system can meet the structural requirements of large-span and the heat-insulating requirements of curtain wall. SUMMARY
[0003] The purpose of the present application is to solve the problems of the prior art, and to provide a new type of heat-insulating steel curtain wall system to meet the heat-insulating requirements of curtain wall in large-span projects.
[0004] To achieve the above purpose, the technical solution provided by the present application is as follows: The heat-insulating steel curtain wall system comprises steel columns, steel beams, heat-insulating materials, adhesive strips, glass, pressing plates and cover plates. BRIEF DESCRIPTION OF DRAWINGS
[0005] Figure 1 is a structural schematic diagram of the first embodiment of the new type of heat-insulating steel curtain wall system of the present application, in which the marks are as follows: 1, steel column; 2, steel beam; 3, heat-insulating profile (3.1, front end; 3.2, rear end; 3.3, inner side adhesive strip notch; 3.4, heat-insulating strip); 4, inner side adhesive strip; 5, glass; 6, outer side adhesive strip; 7, pressing plate; 8, cover plate. Figure 2 is a structural schematic diagram of the second embodiment of the new type of heat-insulating steel curtain wall system of the present application, in which the marks are as follows: 1, steel column; 2, steel beam; 3, heat-insulating profile (3.1, front end; 3.2, rear end; 3.3, inner side adhesive strip notch; 3.4, heat-insulating strip); 4, inner side adhesive strip; 5, glass; 6, outer side adhesive strip; 7, pressing plate; 8, cover plate. Figure 3 is a structural schematic diagram of the third embodiment of the new type of heat-insulating steel curtain wall system of the present application, in which the marks are as follows: 1, steel column; 2, steel beam; 3, heat-insulating profile (3.1, front end; 3.2, rear end; 3.3, inner side adhesive strip notch); 4, inner side adhesive strip; 5, glass; 6, outer side adhesive strip; 7, pressing plate; 8, cover plate. Figure 4 is a structural schematic diagram of the fourth embodiment of the new type of heat-insulating steel curtain wall system of the present application, in which the marks are as follows: 1, steel column; 2, steel beam; 3, heat-insulating profile (3.1, front end; 3.2, rear end; 3.3, inner side adhesive strip notch); 4, inner side adhesive strip; 5, glass; 6, outer side adhesive strip; 7, pressing plate; 8, cover plate. Figure 5is the structural schematic view of the fifth embodiment of the novel heat-breaking steel curtain wall system, in the figure, the marks are as follows: 1, steel stand column, 2, steel cross beam, 3, heat-breaking component (3.1, screw rod, 3.2, heat-breaking stud, 3.3, gasket, 3.4, screw), 4, inner gasket, 5, glass, 6, outer gasket, 7, pressing plate, 8, cover plate Figure 6 is the structural schematic view of the sixth embodiment of the novel heat-breaking steel curtain wall system, in the figure, the marks are as follows: 1, steel stand column, 2, steel cross beam, 3, heat-breaking stud, 4, inner gasket, 5, glass, 6, outer gasket, 7, pressing plate, 8, cover plate DETAILED DESCRIPTION
[0006] .1) the following reference drawings Figure 1 The first embodiment of the present application is further elaborated. First step, install the steel stand column 1 and the steel cross beam 2 of the curtain wall; Second step, fix the rear end 3.2 of the heat-breaking section bar 3 on the steel stand column 1 and the steel cross beam 2 with screws; Third step, install the inner gasket 4 in the inner gasket notch 3.3 on the heat-breaking section bar 3; Fourth step, place the left and right two glasses 5 on the steel cross beam 2; Fifth step, press the glass pressing plate 7 with the outer gasket 6, and twist the stud into the front end notch 3.1 of the heat-breaking section bar 3 on the outer side of the glass pressing plate 7; Sixth step, cover the cover plate 8, and the curtain wall installation is completed. The above first step to the sixth step is the implementation process of the first embodiment. 2) the following reference drawings Figure 2 The second embodiment of the present application is further elaborated. First step, install the steel stand column 1 and the steel cross beam 2 of the curtain wall; Second step, tightly insert the protrusions of the rear end 3.2 of the heat-breaking section bar 3 into the grooves of the steel stand column 1 and the steel cross beam 2; Third step, install the inner gasket 4 in the inner gasket notch 3.3 on the heat-breaking section bar 3; Fourth step, place the left and right two glasses 5 on the steel cross beam 2; Fifth step, press the glass pressing plate 7 with the outer gasket 6, and twist the stud into the front end notch 3.1 of the heat-breaking section bar 3 on the outer side of the glass pressing plate 7; Sixth step, cover the cover plate 8, and the curtain wall installation is completed. The above first step to the sixth step is the implementation process of the second embodiment. 3) the following reference drawings Figure 3 The third embodiment of the present application is further elaborated. Step 1: Install the steel columns 1 and steel beams 2 of the curtain wall; The second step is to fix the rear end 3.2 of the thermal break profile 3 to the steel column 1 and the steel beam 2 with screws. The third step is to install the inner rubber strip 4 into the inner rubber strip groove of the thermal insulation profile 3.3. Step 4: Place the left and right glass pieces 5 on the steel beam 2; Step 5: Press down the glass pressure plate 7 with the outer adhesive strip 6, and screw the bolts into the front groove 3.1 of the thermal insulation profile 3 on the outside of the glass pressure plate 7; Step 6: Cover with the cover plate 8. The curtain wall installation is now complete. The first to sixth steps described above constitute the third implementation process of this invention. 4) The following is a reference appendix Figure 4 The fourth embodiment of the present invention will be further described in detail below. Step 1: Install the steel columns 1 and steel beams 2 of the curtain wall; The second step is to tightly insert the protrusion of the rear end 3.2 of the thermal insulation profile 3 into the groove of the steel column 1 and the steel beam 2; The third step is to install the inner rubber strip 4 into the inner rubber strip groove of the thermal insulation profile 3.3. Step 4: Place the left and right glass pieces 5 on the steel beam 2; Step 5: Press down the glass pressure plate 7 with the outer adhesive strip 6, and screw the bolts into the front groove 3.1 of the thermal insulation profile 3 on the outside of the glass pressure plate 7; Step 6: Cover with the cover plate 8. The curtain wall installation is now complete. The first to sixth steps described above constitute the fourth implementation process of this invention. 5) The following is a reference appendix Figure 5 The fifth embodiment of the present invention will be further described in detail below. Step 1: Install the steel columns 1 and steel beams 2 of the curtain wall; The second step is to install the screw 3.1 in the heat insulation component 3 onto the steel column 1 and the steel beam 2; The third step is to install the inner rubber strip 4 onto the steel column 1 and the steel beam 2 using the screw 3.1; Step 4: Install the heat-insulating stud 3.2 onto the screw 3.1; Step 5: Place the two glass pieces 5 on the left and right sides onto the steel beam 2; Step 6: Press down the glass pressure plate 7 with the outer adhesive strip 6, and screw the screw 3.4 through the washer 3.3 and into the heat-insulating stud 3.2 on the outside of the glass pressure plate 7; Step 7: Cover with the cover plate 8. The curtain wall installation is now complete. The first to seventh steps described above constitute the fifth implementation process of this invention. 6) The following is a reference appendix Figure 6 The sixth embodiment of the present invention will be further described in detail below. Step 1: Install the steel columns 1 and steel beams 2 of the curtain wall; Step 2: Install the inner rubber strip 4 on the steel column 1 and the steel beam 2; Step 3: Place the left and right glass pieces 5 on the steel beam 2; Step 4: Press down the glass pressure plate 7 with the outer adhesive strip 6, and screw the heat-breaking bolt 3 into the screw holes of the steel column 1 and the steel beam 2 on the outside of the glass pressure plate 7. Step 5: Cover with the cover plate 8. The curtain wall installation is now complete. The first to fifth steps described above constitute the sixth embodiment of this invention. Compared with existing technical solutions, this invention replaces thermally broken aluminum profiles by installing thermally broken materials on steel columns and steel beams. This invention has a simple structure, good thermal insulation effect, and is easy to implement. The above description is merely a preferred embodiment of the present invention and is not intended to limit the implementation of the present invention. Those skilled in the art can easily make corresponding modifications and alterations based on the main concept and spirit of the present invention. Therefore, the scope of protection of the present invention should be determined by the scope of protection claimed in the claims.
Claims
1. A novel thermally broken steel curtain wall system, characterized in that: First, steel column 1, steel beam 2; Second, thermal insulation profile 3; Third, inner rubber strip 4; Fourth, glass 5; Fifth, outer rubber strip 6; Sixth, pressure plate 7; Seventh, cover plate 8.
2. The novel thermally broken steel curtain wall system as described in claim 1, characterized in that... The first step, "steel column 1 and steel beam 2", includes the following features: Feature 1: The steel columns 1 and steel beams 2 are made of carbon steel or stainless steel, with grooves in Figures 2 and 4.
3. The novel thermally broken steel curtain wall system as described in claim 1, characterized in that... The second step, "thermal insulation profile 3", includes the following features: Feature 1: The front end 3.1 of Figures 1 and 2 is made of metal; the front end 3.1 of Figures 3 and 4 is made of non-metallic material, and all have slots for mounting bolts; the screw 3.4 in Figure 5 is made of metal and has external threads; the thermal break bolt 3 in Figure 6 is made of non-metallic material and has external threads. Feature 2: In Figure 1, the rear end 3.2 is made of metal and is connected to the steel column 1 and steel beam 2 by screws; in Figure 2, the rear end 3.2 is made of metal and has a protrusion, which is tightly connected to the groove of the steel column 1 and steel beam 2; in Figure 3, the rear end 3.2 is made of non-metallic material and is connected to the steel column 1 and steel beam 2 by screws; in Figure 4, the rear end 3.2 is made of non-metallic material and has a protrusion, which is tightly connected to the groove of the steel column 1 and steel beam 2; in Figure 5, the screw 3.1 is made of metal and has external threads. Feature 3: In Figures 1 and 2, the inner rubber strip groove 3.3 is made of metal, and the groove can accommodate the inner rubber strip 4; In Figures 3 and 4, the inner rubber strip groove 3.3 is made of non-metallic material, and the groove can accommodate the inner rubber strip 4. Feature 4: As shown in Figures 1 and 2, the thermal break strip 3.4 is made of non-metallic material and is tightly connected to the front end 3.1 and the rear end 3.2; As shown in Figures 3 and 4, the thermal break profile 3 is made of non-metallic material; As shown in Figure 5, the thermal break stud 3.2 is tightly connected to the screw 3.1 and the bolt 3.
4. Feature 5, Figures 1, 2, 3, and 4: Thermally broken profile 3 possesses certain thermal insulation properties; Figure 5: Thermally broken stud 3.2; Figure 6: Thermally broken bolt 3 possesses certain thermal insulation properties; Feature 6: The thermally broken profile 3 in Figures 1, 2, 3, and 4, and the thermally broken component 3 in Figures 5 and 6, possess certain mechanical properties.
4. The novel thermally broken steel curtain wall system as described in claim 1, characterized in that... The third step, "inner adhesive strip" 4, includes the following features: Feature 1: The inner rubber strip 4 is made of non-metallic material; Feature 2: In Figures 1, 2, 3, and 4, the inner rubber strip 4 is installed in the inner rubber strip groove 3.3; in Figure 5, the inner rubber strip 4 passes through the screw 3.1 and is installed on the steel column 1 and the steel beam 2; in Figure 6, the inner rubber strip 4 passes through the heat-insulating bolt 3 and is installed on the steel column 1 and the steel beam 2. Feature 3: The inner rubber strip 4 has a certain sealing performance.
5. The novel thermally broken steel curtain wall system as described in claim 1, characterized in that... The fourth step, "glass" 5, includes the following features: Feature 1: The glass 5 is installed on the steel column 1 and the steel beam 2, and is tightly connected to the inner rubber strip 4 and the outer rubber strip 6 by screws through the pressure plate 7; Feature 2: Glass 5 has certain thermal insulation properties.
6. The novel thermally broken steel curtain wall system as described in claim 1, characterized in that... The fifth step, "outer adhesive strip" 6, includes the following features: Feature 1: The outer rubber strip 6 is made of non-metallic material; Feature 2: The outer rubber strip 6 is installed in the groove of the pressure plate 7 and is tightly attached to the surface of the glass 5; Feature 3: The outer rubber strip 6 has a certain sealing performance.
7. The novel thermally broken steel curtain wall system as described in claim 1, characterized in that... The sixth step, "pressure plate" 7, includes the following features: Feature 1: Pressure plate 7 is made of metal; Feature 2: The pressure plate 7 has a groove for installing the outer rubber strip 6; Feature 3: The pressure plate 7 has recessed holes for mounting screws; Feature 4: The pressure plate 7 has certain mechanical properties.
8. The novel thermally broken steel curtain wall system as described in claim 1, characterized in that... The seventh step, "cover plate" 8, includes the following features: Feature 1: Cover plate 8 is made of metal; Feature 2: The cover plate 8 and the pressure plate 7 are fastened together.